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Development of Flicker Visual Stimulus by Mixing Fundamental and Its Harmonie Frequencies for SSVEP-based Brain-Computer Interface

机译:通过混合基于SSVEP的脑电电脑界面的基础及其谐波频率的闪烁视觉刺激的发展

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A practical brain-computer interface (BCI) system is challenging research to develop software and hardware. Steady-state visual evoked potential (SSVEP) is the most popular use for spelling and steering an electric wheelchair. SSVEP achieves high accuracy and less time for training. However, an SSVEP response was not clearly present for all users. Therefore, this work proposed an improvement to the SSVEP visual stimulation pattern. We demonstrated a modified visual stimulus pattern by mixing fundamental and harmonic flickering frequencies for enhancing SSVEP response. In the experiment, we observed that the proposed visual stimulus pattern could yield a high amplitude of SSVEP than the conventional visual stimulus pattern, around 9%. We will further add participants and implement for online BCI system.
机译:一种实用的脑电电脑界面(BCI)系统是挑战开发软件和硬件的研究。 稳态视觉诱发潜力(SSVEP)是拼写和转向电动轮椅最受欢迎的用途。 SSVEP实现高精度,更少的培训时间。 但是,所有用户都没有清楚地存在SSVEP响应。 因此,这项工作提出了对SSVEP视觉刺激模式的改进。 我们通过混合基本和谐波闪烁频率来提高SSVEP响应来展示改进的视觉刺激模式。 在实验中,我们观察到所提出的视觉刺激模式可以产生比传统的视觉刺激图案的SSVEP的高振幅,大约为9%。 我们将进一步为在线BCI系统进一步添加参与者和实施。

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